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首页> 外文期刊>Tissue engineering, Part A >The Use of Total Human Bone Marrow Fraction in a Direct Three-Dimensional Expansion Approach for Bone Tissue Engineering Applications: Focus on Angiogenesis and Osteogenesis
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The Use of Total Human Bone Marrow Fraction in a Direct Three-Dimensional Expansion Approach for Bone Tissue Engineering Applications: Focus on Angiogenesis and Osteogenesis

机译:在直接的三维扩展方法中对人体组织的总人类骨髓比例在骨组织工程中的应用:专注于血管生成和成骨

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Current approaches in bone tissue engineering have shown limited success, mostly owing to insufficient vascularization of the construct. A common approach consists of co-culture of endothelial cells and osteoblastic cells. This strategy uses cells from different sources and differentiation states, thus increasing the complexity upstream of a clinical application. The source of reparative cells is paramount for the success of bone tissue engineering applications. In this context, stem cells obtained from human bone marrow hold much promise. Here, we analyzed the potential of human whole bone marrow cells directly expanded in a three-dimensional (3D) polymer matrix and focused on the further characterization of this heterogeneous population and on their ability to promote angiogenesis and osteogenesis, both in vitro and in vivo, in a subcutaneous model. Cellular aggregates were formed within 24 h and over the 12-day culture period expressed endothelial and bone-specific markers and a specific junctional protein. Ectopic implantation of the tissue-engineered constructs revealed osteoid tissue and vessel formation both at the periphery and within the implant. This work sheds light on the potential clinical use of human whole bone marrow for bone regeneration strategies, focusing on a simplified approach to develop a direct 3D culture without two-dimensional isolation or expansion.
机译:骨组织工程中的当前方法显示出有限的成功,主要是由于构造物的血管化不足。常见方法包括内皮细胞和成骨细胞的共培养。该策略使用来自不同来源和分化状态的细胞,从而增加了临床应用上游的复杂性。修复细胞的来源对于骨组织工程应用的成功至关重要。在这种情况下,从人骨髓获得的干细胞具有广阔的前景。在这里,我们分析了人类全骨髓细胞在三维(3D)聚合物基质中直接扩增的潜力,并着重于此异​​质性群体的进一步表征以及它们在体外和体内促进血管生成和成骨的能力,在皮下模型中。细胞聚集物在24小时内形成,并在12天的培养期内表达了内皮和骨特异性标记物以及特异性连接蛋白。组织工程构造物的异位植入显示在植入物的外围和内部均存在类骨组织和血管形成。这项工作揭示了人类全骨髓在骨再生策略中的潜在临床应用,着眼于简化的方法来开发无需二维隔离或扩展的直接3D文化。

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